Monday, June 3, 2019

Of two persons with six fingers on their hands, MRI revealed that it is actuated by extra muscles & nerves, & fMRI identified a distinct cortical representation of the extra finger; were able with only one hand of tasks normally requiring 2

Augmented manipulation ability in humans with six-fingered hands. C. Mehring, M. Akselrod, L. Bashford, M. Mace, H. Choi, M. Blüher, A.-S. Buschhoff, T. Pistohl, R. Salomon, A. Cheah, O. Blanke, A. Serino & E. Burdet. Nature Communications 10, Article number: 2401 (2019). https://www.nature.com/articles/s41467-019-10306-w

Abstract: Neurotechnology attempts to develop supernumerary limbs, but can the human brain deal with the complexity to control an extra limb and yield advantages from it? Here, we analyzed the neuromechanics and manipulation abilities of two polydactyly subjects who each possess six fingers on their hands. Anatomical MRI of the supernumerary finger (SF) revealed that it is actuated by extra muscles and nerves, and fMRI identified a distinct cortical representation of the SF. In both subjects, the SF was able to move independently from the other fingers. Polydactyly subjects were able to coordinate the SF with their other fingers for more complex movements than five fingered subjects, and so carry out with only one hand tasks normally requiring two hands. These results demonstrate that a body with significantly more degrees-of-freedom can be controlled by the human nervous system without causing motor deficits or impairments and can instead provide superior manipulation abilities.


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